首页> 外文会议>International conference on mathematics, computational methods reactor physics;MC 2009 >A COMPARISON OF MONTE CARLO PARTICLE TRANSPORT ALGORITHMS FOR BINARY STOCHASTIC MIXTURES
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A COMPARISON OF MONTE CARLO PARTICLE TRANSPORT ALGORITHMS FOR BINARY STOCHASTIC MIXTURES

机译:二元随机混合物的蒙特卡洛粒子传输算法比较

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Two Monte Carlo algorithms originally proposed by Zimmerman and Zimmerman and Adams for particle transport through a binary stochastic mixture are numerically compared using a standard set of planar geometry benchmark problems. In addition to previously-published comparisons of the ensemble-averaged probabilities of reflection and transmission, we include comparisons of detailed ensemble-averaged total and material scalar flux distributions. Because not all benchmark scalar flux distribution data used to produce plots in previous publications remains available, we have independently regenerated the benchmark solutions including scalar flux distributions. Both Monte Carlo transport algorithms robustly produce physically-realistic scalar flux distributions for the transport problems examined. The first algorithm reproduces the standard Levermore-Pomraning model results for the probabilities of reflection and transmission. The second algorithm generally produces significantly more accurate probabilities of reflection and transmission and also significantly more accurate total and material scalar flux distributions.
机译:使用一组标准的平面几何基准问题,对最初由Zimmerman和Zimmerman和Adams提出的用于通过二进制随机混合物进行粒子传输的两种Monte Carlo算法进行了数值比较。除了以前发表的对反射和透射的集合平均概率的比较之外,我们还包括对集合平均的总和材料标量通量分布的详细比较。由于并非所有以前的出版物中用于生成图的基准标量通量分布数据都可用,因此我们独立地重新生成了包括标量通量分布在内的基准解决方案。两种蒙特卡洛输运算法均能针对所研究的输运问题可靠地产生物理逼真的标量通量分布。第一种算法针对反射和透射的概率重现标准的Levermore-Pomraning模型结果。第二种算法通常会产生明显更准确的反射和透射概率,并且还会产生明显更精确的总和材料标量通量分布。

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